Atomic layer etching of graphene through controlled ion beam for graphene-based electronics

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作者
Ki Seok Kim
You Jin Ji
Yeonsig Nam
Ki Hyun Kim
Eric Singh
Jin Yong Lee
Geun Young Yeom
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[1] Sungkyunkwan University,School of Advanced Materials Science and Engineering
[2] Sungkyunkwan University,SKKU Advanced Institute of Nano Technology (SAINT)
[3] Sungkyunkwan University,School of Chemistry
[4] Stanford University,Department of Computer Science
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The electronic and optical properties of graphene are greatly dependent on the the number of layers. For the precise control of the graphene layers, atomic layer etching (ALE), a cyclic etching method achieved through chemical adsorption and physical desorption, can be the most powerful technique due to barely no damage and no contamination. In this study, we demonstrated the ALE process of graphene layers without noticeably damaging the graphene by using a controlled low energy oxygen (O2+/O+)-ion for chemical adsorption and a low energy Ar+-ion (11.2 eV) for physical desorption. In addition, using a trilayer graphene, mono- and bi-layer graphene could be successfully fabricated after one- and two-cycle ALE of the trilayer graphene, respectively. We believe that the ALE technique presented herein can be applicable to all layered materials such as graphene, black phosphorous and transition metal dichalcogenides which are important for next generation electronic devices.
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